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含氮杂环荧光和磷光体及冠醚:生物和制药应用。

Fluorescent and Phosphorescent Nitrogen-Containing Heterocycles and Crown Ethers: Biological and Pharmaceutical Applications.

机构信息

Department of Chemistry, Quaid I Azam University, Islamabad 45320, Pakistan.

Department of Zoology, Government College University, Faisalabad 38000, Pakistan.

出版信息

Molecules. 2022 Oct 6;27(19):6631. doi: 10.3390/molecules27196631.

Abstract

Fluorescent molecules absorb photons of specific wavelengths and emit a longer wavelength photon within nanoseconds. Recently, fluorescent materials have been widely used in the life and material sciences. Fluorescently labelled heterocyclic compounds are useful in bioanalytical applications, including in vivo imaging, high throughput screening, diagnostics, and light-emitting diodes. These compounds have various therapeutic properties, including antifungal, antitumor, antimalarial, anti-inflammatory, and analgesic activities. Different neutral fluorescent markers containing nitrogen heterocycles (quinolones, azafluoranthenes, pyrazoloquinolines, etc.) have several electrochemical, biological, and nonlinear optic applications. Photodynamic therapy (PDT), which destroys tumors and keeps normal tissues safe, works in the presence of molecular oxygen with light and a photosensitizing drugs (dye) to obtain a therapeutic effect. These compounds can potentially be effective templates for producing devices used in biological research. Blending crown compounds with fluorescent residues to create sensors has been frequently investigated. Florescent heterocyclic compounds (crown ether) increase metal solubility in non-aqueous fluids, broadening the application window. Fluorescent supramolecular polymers have widespread use in fluorescent materials, fluorescence probing, data storage, bio-imaging, drug administration, reproduction, biocatalysis, and cancer treatment. The employment of fluorophores, including organic chromophores and crown ethers, which have high selectivity, sensitivity, and stability constants, opens up new avenues for research. Fluorescent organic compounds are gaining importance in the biological world daily because of their diverse functionality with remarkable structural features and positive properties in the fields of medicine, photochemistry, and spectroscopy.

摘要

荧光分子吸收特定波长的光子,并在纳秒内发射出更长波长的光子。最近,荧光材料已广泛应用于生命科学和材料科学。荧光标记的杂环化合物在生物分析应用中非常有用,包括体内成像、高通量筛选、诊断和发光二极管。这些化合物具有各种治疗特性,包括抗真菌、抗肿瘤、抗疟疾、抗炎和镇痛活性。不同的中性荧光标记物含有氮杂环(喹诺酮类、氮杂芴类、吡唑并喹啉类等),具有多种电化学、生物学和非线性光学应用。光动力疗法(PDT)在有分子氧的情况下,利用光和光敏药物(染料)来破坏肿瘤并保护正常组织,从而发挥作用,以获得治疗效果。这些化合物可能是用于生物研究的器件的有效模板。将冠醚化合物与荧光残基混合以制造传感器已被广泛研究。荧光杂环化合物(冠醚)增加了金属在非水流体中的溶解度,拓宽了应用范围。荧光超分子聚合物在荧光材料、荧光探测、数据存储、生物成像、药物传递、生殖、生物催化和癌症治疗等领域得到了广泛的应用。荧光团(包括具有高选择性、灵敏度和稳定常数的有机发色团和冠醚)的应用为研究开辟了新途径。由于其具有显著的结构特征和在医学、光化学和光谱学领域的积极性质,具有多种功能的荧光有机化合物在生物界中的重要性日益增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45ad/9573242/9383e33dd932/molecules-27-06631-g001.jpg

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